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Time domain simulations of the wave-induced motions of ships in maneuvering condition

机译:操纵条件下船舶波浪运动的时域模拟

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The wave-induced motions of ships in maneuvering condition are numerically studied based on potential theory. The total disturbance potential is decomposed into a basic part and a perturbation part. The basic flow is evaluated based on the double-body model with a trailing vortex sheet. The perturbation flow is solved by using a time domain Rankine panel method to determine the hydrodynamic forces, and the wave-induced ship motions are then evaluated by an Adam-Moulton scheme. The solving process of the wave-induced motion is integrated with the maneuvering prediction by using a two-time scale model. Numerical tests are firstly carried out for a Series 60 ship, and the numerical results are compared with the experimental data to validate the numerical method for the basic flow. Then the wave-induced motions of the S-175 container ship in straight course and in turning condition are simulated; the numerical results are compared with the ITTC data and the experimental data, which show fairly good agreements.
机译:基于势能理论对船舶在操纵状态下的波浪运动进行了数值研究。总的潜在扰动被分解为基本部分和扰动部分。基于带有尾涡片的双体模型评估基本流量。通过使用时域兰金面板法确定流体动力来求解扰动流,然后通过Adam-Moulton方案评估波浪引起的船舶运动。波浪运动的求解过程通过两次尺度模型与操纵预测相结合。首先对60系列船进行了数值测试,并将数值结果与实验数据进行比较,以验证基本流量的数值方法。然后,模拟了S-175集装箱船在直线航行和转弯情况下的波浪诱导运动;数值结果与ITTC数据和实验数据进行了比较,显示出很好的一致性。

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